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TargetMol | Compound Library

Glycolysis Compound Library

Catalog No. L2521

The glycolytic pathway, also known as the EMP pathway (Embden-Meyerhof-Parnas pathway), refers to the degradation of glucose to pyruvate and the generation of ATP through a series of steps under anaerobic conditions, and glycolysis occurs in all living cells. It has been found that tumor cells preferentially choose the glycolytic pathway to provide energy even in the presence of oxygen, and the process is called aerobic glycolysis (Warburg effect). Tumor cells consume more glucose compared to normal cells, so by targeting areas that consume large amounts of glucose, cancer can be possibly identified. Targeting glycolysis in tumor cells is therefore expected to be an important therapeutic strategy for treating tumors. TargetMol built the Glycolysis Compound Library that collected 740 active compounds targeting glycolysis-related compounds. The compounds in the library can be used in research relating to antitumor and glycolysis-related drug development.

All products from TargetMol are for Research Use Only. Not for Human or Veterinary or Therapeutic Use.

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Catalog No. L2521

Glycolysis Compound Library

sizeIn stock

  • 1 mg
  • 30 μL x 10 mM (in DMSO)
  • 50 μL x 10 mM (in DMSO)
  • 100 μL x 10 mM (in DMSO)
  • 250 μL x 10 mM (in DMSO)
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Product Description Product Description

  • 740 glycolysis-related active compounds for high-throughput and high-content screening.
  • Targets of action include hexokinase; pyruvate kinase; glucokinase and other key enzymes of glycolysis.
  • Detailed instructions, compound structure, target information, activity description, etc.
  • NMR and HPLC detection techniques to ensure high product purity and quality.
  • All compounds are available in stock.

Packaging And Storage | TargetMol Packaging And Storage

  • Powder or pre-dissolved DMSO solutions in 96/384 well plate with optional 2D barcode
  • Shipped with blue ice

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Targetmol Compound Libraries
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Library Customization | TargetMol Library Composition

PI3K
Apoptosis
mTOR
Autophagy
Akt
AMPK
GSK-3
HIF/HIF Prolyl-Hydroxylase
CDK
DNA-PK
HIF
S6 Kinase
Glucokinase
ATM/ATR
Endogenous Metabolite
PDK
ERK
NF-κB
Antibacterial
transporter
c-Myc
PI4K
Reactive Oxygen Species
p38 MAPK
PKA
Parasite
PKC
Src
PPAR
VEGFR
Caspase
STAT
TNF
PKM
HIV Protease
JNK
Wnt/beta-catenin
Dehydrogenase
Mitophagy
SIK
Chk
MEK
PTEN
COX
MAPK
Casein Kinase
Influenza Virus
FLT
ROCK
IL Receptor
MMP
IGF-1R
MELK
Microtubule Associated
Phosphatase
Calcium Channel
Aurora Kinase
Cytochromes P450
Antibiotic
DYRK
Virus Protease
PDE
Hexokinase
JAK
HSV
DNA/RNA Synthesis
Bcl-2 Family
Nrf2
HDAC
Potassium Channel
PARP
Bcr-Abl
Raf
Mitochondrial Metabolism
Antifection
Lipoxygenase
Epigenetic Reader Domain
Interleukin
Prostaglandin Receptor
FGFR
SGK
Cannabinoid Receptor
AChR
FAK
Chloride channel
Carbonic Anhydrase
HCV Protease
Integrin
Ferroptosis
Antioxidant
Adenosine Receptor
BACE
Pim
Rho
Serine/threonin kinase
Adrenergic Receptor
Gamma-secretase
LDL
Glucosidase
PDGFR
Cholinesterase (ChE)
TGF-beta/Smad
EGFR
SGLT
ATP Citrate Lyase
Beta-Secretase
P-gp
IκB/IKK
Beta Amyloid
PLK
c-RET
c-Kit
Tyrosinase
p53
NO Synthase
Proton pump
NOS
NPC1L1
RAR/RXR
Dopamine Receptor
Estrogen/progestogen Receptor
YAP
Antifungal
c-Met/HGFR
IFNAR
NADPH
RAAS
PERK
Tie-2
gp120/CD4
GTPase
MRP
Estrogen Receptor/ERR
HBV
Tyrosine Kinases
Cholecystokinin Receptor
Serine Protease
Cell Cycle Arrest
FXR
PYK2
Glutaminase
TRP/TRPV Channel
MAO
Aryl Hydrocarbon Receptor
Topoisomerase
Myosin
E1/E2/E3 Enzyme
RIP kinase
Drug Metabolite
Monoamine Transporter
Guanylate cyclase
Opioid Receptor
Fatty Acid Synthase
CXCR
cAMP
GluR
CaMK
BCRP
OAT
Acyltransferase
Antiviral
HSP
TLR
LRRK2
Trk receptor
Sirtuin
Decarboxylase
ALK
Reverse Transcriptase
Ligand for E3 Ligase
c-Fms
KLF
CRISPR/Cas9
GABA Receptor
DAPK
Syk
NOD
CFTR
PD-1/PD-L1
Kinesin
S1P Receptor
ADC Cytotoxin

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